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Echinobase
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Echinobase Accession
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Echinoderm mRNA
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S. purpuratus
(Purple sea urchin) 5.0
L. variegatus
(Green sea urchin) 3.0
P. miniata
(Bat star) 3.0
A. planci
(Crown-of-thorns) 1.0
L. pictus
(Painted urchin) 3.0
A. rubens
(Sugar star) 1.3
A. japonica
(Feather star) 1.0
Genomes
Download Echinoderm Genomes
S. purpuratus
(Purple sea urchin) 5.0
L. variegatus
(Green sea urchin) 3.0
P. miniata
(Bat star) 3.0
A. planci
(Crown-of-thorns) 1.0
L. pictus
(Painted urchin) 3.0
A. rubens
(Sugar star) 1.3
A. japonica
(Feather star) 1.0
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Download BLAST databases
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-- Genomes --
Strongylocentrotus purpuratus 5.0 Genome
Strongylocentrotus purpuratus 3.1 Genome
Lytechinus variegatus 3.0 Genome
Patiria miniata 3.0 Genome
Acanthaster planci 1.0 Genome
Lytechinus pictus 3.0 Genome
Lytechinus pictus 2.1 Genome
Asterias rubens 1.3 Genome
Anneissia japonica 1.0 Genome
-- mRNA --
Echinoderm mRNA
-- CDS --
Echinoderm CDS
-- Protein --
Echinoderm Protein
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>JT121898.1 TSA: Strongylocentrotus purpuratus WHL22.114667.0 mRNA sequence CCTGGATCGCTCGTGTGCTTGCGAGCCTGTGATTGGCTGGATGAGCGCGCGTGACCCCAAACGTCATAAT AACCCTGATTAGTTATGCGCGATTGTGCCCGTGCTTGTAGGCGTTGACAATAGTCGAAACAGCTGATGGG CCCCAGCTGATCGTTCAGTATTGCGATATACACACACAATCGTGCATGCAGCAGCGAAGTGCTGAACCAA CCGTGAAGTTCGGCGCTCGCTCGCCATCAACAACCTACCTTTTCTTTGTTGCACCAGTAGAAATATTGAT GTCTGGATTTTATATCTAAACGTCTTCTCATTTTACCGAGCAGAACCCAAACCTATGAGATCTCTTTGTG GAATAAGTGCCGATGTTTTCTAAGAGTTATAGCAGTTGATTAATCATTTTTGTCGCGGACGAGCAACAAA TCAAGTCAAAATGTGTTGCTTTTTCAAGAATTCGTGGGGCTGGTTGGTGACTTTTGCAACCTTCCTCCTC ATAATGCCCGTTACGGGTATCCTGAGCAGTTTTGGAGTCATCTTTGTGAAATTACAGCTCGAATATGATA TATCCGATTTTGCATTAGGATGGATAGGATCAGTGGCCTTCGGGATAATGTTCGCAGCATCGCCGATCTC GACCGGTCTCTTCAAGCGTTTCGGACATCGTAAAGTCGCCGTAGTTGGCGTCATCCTGTGCAGCGCAGGT CTTCTTCTGTCGGCTGCCGTACCTAACCCATACTACCTCTTCGTCACCTACAGTCTCCTCTTTGGTGTCG GCAGCAACTTCATTGACAACACATCACTCAACTTGGTCGGGACATACTTCCCAAGGAAGAACAGCGCCCG TGCCTCCTGTTTCGCCACACTCGGATGGAGTATAGGTTCACTTACTTTGAATCCCGCTGTCGAGCTTCTG TGCGAGAAATTCGGCTGGCGTAAAACCTTCATCATCCTCGGCTGTTGCCTCTTAGTTCATGGGCTCCTCT GCGCTTGCCTCTTCAGGAAGAAGGTCGACTACGTTGAAATTGCAATCTCTGAAGAGGAAGACGCAGAAGA CAAGGAAGAATACTACAATGATGACGAGATCAACACGGTCGACGACAATGTATTCAAATCACAGACCAAT GGGTATATCCCAGTAAAAGGAAGCTTCCAACTTGGCGAACCCGTTCTCCTCAGCACGCAGTTGTCAACCA TCGACGAATCCGCACTCAGTAACGAGAATATCAACCAAAATTGTCACACAGGCACGGCACCAGTAACGAG AAAAGAGAGCGTGACATTCGCGCCTTCAACTCAGCTACCGAACGATGGGGAAGAAGGGCTCCAGCGAAAC GATAGCAACTTATCACAACTGTCAAGTAACGGATCAAGAAGCAGTGGGTCGAAGGGACGTCAGGGAAGCA GCAACTCAGGGAAGAACGATCAGAATGGAAGACGGGAGGGCTCAATCACCAGGAAAGACAGCACAGGCAA GATGAGGAGAAACAGTTCTATGAACAGACGGGACAGCATTGTTAGTTTTATCAGAAGAGATAGCACATGG TCAAGGAAGGACAGTATAAGGATTCCTGTACCAGACAACACGCCAAAGCACACTACGAAACAGTATATCA AGGCTTTCTTGCACACCATGAAGGCGCCTGGTATCTTGTTATGGGGCTTGGCCAACATTCTTATGAACAT GTCACTCATCTTTCCATTTGTTAATTTTATAAAATATATGGAAACGATAGGCATCCCATCAGCAAAGGGA GTCCACGTTCTAATGGTCTTCGGGTTGTCGGATATGATCGGCCGTGGTGGTTCGGCAATCTTCGGAGATT ACATCCCTTTTCACACCGTGTACGTATACCCGATCTGCAACCTTATCATGGGTGCTGTGACGATGTGTCT TCTAGTCATTGACACCATACCTGGACTTTATGGCTACGCTATAGTTGTGGGTACGCTGACGGGAGTTGTG AATAGCATGCTGCTCAAAGTATCAATGGATCTTTTTGGTCACAAGCTATTAGCAGAGGCATGGACATGGA CTCTACTATCCGCTGGCATCGGTATTACATTCGGCCACATTCAATAGCAGGTGCATCATACGATTTAACG CAATCCTTCGATGTCGCCTTCTACATCGGCGGCGGTATCTACATCCTAGCAGCTGTCGTCACCCTCGCTA TCCCCTTAGTCCAGAGGTGGAAAAAATGGGTACCAGAGAAGCAGAGCAAACCAGGACTCGACGCCCTGCC CGAAGATGCCATCCCCGAGAACTTGAGGCGTCTGTCCATTAAGCCATTGGAGGACTCGAAGGCGAAAGCG GAACTGCATAAACAGCAGACGGAAGAGCTTGAAAAGAGTGCGAAACGGCTGGAGGAGAGATTGACCGTTG TTTAGATGACTCCTTGACTGTGTTGTTTTATAATACATCTGTGCGGGGAGAGCGAAATGAGCGCTCTGAG AAAAGAAACCTCACCCGATCGAAGCGCTTTCGCATATCTACCATCGTCTCTCTCGCTTCGTCTTTTCTTT ATTCACGAACAACTCGCCAAAGTTTGTCGCAATATTTATGCTATCCTGTTGGTTGTATATATTGTATCAT AGTGAGAGAAAGAAACGAAAACAAGCCAATCAAGAATAAGAGCAGTCTTGAATAATGCCTCATTTTCATG ATGCCTTTTTATCGACATTTTCTCGTGGTATTTAATTAAGAGCACAAAAAAAGGGGTTTTATTTAACCCC ATGCTATCTGTAATTTTTTGGCAGATACAACAATGTGTGTGTGTAGAATTCCGTTGACATCTCAAATGCT TTTATAAAAGATGGGCCTTACAAATAAAATTGCGTCCGTCTCGGTATGGTTTTGTTCTAGAAGCAGATGT GGACTAAAATGGAGATGATCATGCAGTTGATTATTGTAATCAATATGTAATATATATTGTGTAGATTATA TATAAGCAGCGAAAGTTATATTCTTCCTCGGCTATATTCAAACCAATGCTTAGGGATTATATTTAAATTG TAAATAAATTACAAATCAAAGAATATCGCTAATGTATAAACAAGTACATGCAAGTGTCCGAAAGTGGGTC ATTTACAATGATTATGCTTTAGCATATTGATCTACGAAAGATAATCCTCAGTTTAAAATTTAGCTCCTTT TGAAAACGGATTGCAATTGTTTTTGAACTAATTTTGCCTTACACATGATGCTCTGCAAATTTGTCTTTAA AGAAAAGAAGATGTTTTGCTTTGAGCATTCCTTCTTCATGTTTTCAGCTGTTACCATGAAACCTCATCAT TGTAAAGCACAGGTCGCACAAAAATTGAGTGCTCATTGCGATTACCGTAATTAAGACGCAGTGATTAAGT TAAACAGCAGCGCTCTCAGGAAATTCTCATGCAGATCAAGCGTCGGCCATAATCACCGGCACTGCGACTA CTTATGCTTCTCCAAAAGGACGCCGAATCAAGAAAACTCTTCTACAAGGTGTGAAAAAAGCGCATTGCGA CCTAGACGATGCCGTTGCGTTTTATCAGATTTTCCTAAGGCGCTGTAAGCATATGTAATGCTAGAACGCC AAAGTAATGGTCGGGCCCTTCTCAAAGTCTTTCGCGACTGCATGGGCAGAAATGTGATGGAGTTATTTAA AGAAGTCATATCTTGAGTTTGTATGCTAGGCTTGTGCACTACTGTGCCTCGGGATTTATACATCACAAGG AAGATGATAAAATAGCAATTTTTTAAATCAAGATGTTCGTCCCTCCCCCCTTTTTTGTTCAGCAAGAATT TTATTTTGTCAAGCAAATGAAGTTTAAACAAGGACTTCATGATACTAGAAATAAAAGCAAAGTCTACCCC CCCCCCCATCCAGTTTTTGGCAGAGAATATTTCATTTTTGCGCATTATTCTGTGCATCGTTCATAGTTTT TTGTCCTGTCATGTAACTGTCACGGTGGATTTTTCTTCTCTTTTAAAGTCTCGATTTGTGGTTGGACAAA CACTGTGAATCAAGTGTTTCTTGTGTATAAACCTTCTGTGAGATATATACTTTAATCATCATTTCCAGTA TTGTAGACATAATATTTAAATGTTCACTGTTTAGGCGCACACTATTATATTTTGCACTTTCCCTCAAAGA AAAATCCACTCAATATAACAGATTATAGATAATACAAAGTCAATGTATGTAGTATTTATTGTGGTTTAGT TTTTATTATTCCGTTCAGTATCGTAGAAATGTCCTATTGATGTTAATAAGACTTGTGATTAGAATATTTT CATATATGTCTTGCCACTATTAGCAGATTACAATTTATATCATAATTCCCCAAAATTGTGATGGTTGAGC ATACCATTTGATCAAAAAACCAAAACTTTCCATTCGTTCTCTGTTTTCGTTTTTTCTCTCTCTCATCTGA TAGAAACTTGTGTCAACTCGAAGTTACTTTAATAAAACGTTAATTGAGCAAATTATTACTATTATTATGA AAATTAGATTAGGATTTCTTCCTTTATTTCCCTGCGGGTCGTTATGCAGAATGTTCAGTATTTTAATACA TTTTCAAAGTTTTTTTTAGGCGCACTAACGGGAAAGGGCTCATTCAATATAAGAGATTTGAAGAAACCAA CTGATGTATTTTTATGTAGAATTAAGCTAGATCTTCGAATGAAATTTTGTATGGAGTCGACGAGTATCCT ACATCAACATGATTGTTTTCAATGAAAATATAGATGAACACAGGCCAGACTTTGTCATCGTGCTCCACTC TACTTCTGAATATAAGTACCCACTTTACTGTTGCATTATTTTCATATTAAAAAAAATCAATTCACTAGTG CGGATGAAAACAAGGATACAATAATATACGTTCGTCACGGACTTGACCTTTCAGAAAGTTAGCCGCCGGC ATTTTCAGATTATTTGAAATGTGAAGGCTTCTTCCATGGTACCTATAATTACACTACAAGTAATTATGTA TATCTTTCTATCTGTTATGAGATACGGTAGAATACATGTTACATGATAACATGCTGTTATGTCGAGCAAC ATTCAGGTTACCTTTTGTACCATTATATACAACACGTGCTTGAACTCTCATAAGCAAGCATACCTCTCAT GTTTATGTGTCACGTGTTGCAATGACGTCAATATCAAGTAAACATGTGTATCGTGTGTATAGGGAGTTAA TTGTTTGAGTGATTGCCTATAAACATGTTAACAGTGGGCAAATCCTGTGATGATACCACCTTCTCTCTCT CTCTCTCTCTCTCTCTCTCTCTCTTCCTCCCTCCCTCCCCTTCACTCCCTCCCCTCTTTCTCTTCTCTGT GATAAAGAGTTAAATTATTGTTCACATTTGTTCATCATTATTGTGAATTGCTTATCAAATATATTCAATA CCTCAATACATAATAACTCACTAATATCATATAATAATCATTTTTATTTTTTCGTGGCAAGCGTTAGAAA AGTATTATATGTAACATGCAAAACATGGTATAGTATCAGTCAGTTTGTCTGAAGTTGTATGAACGGTATT ACGTATTTCGTGCGTACAGCACATTGTATAGTATTCCGCTAGACAGGTTTCAAATTAACAATATTTGGCT TAAATATATATACTTCGGGACGTCGTGTACAGTGGATAGGCTAGGCAATTTGTCCGTGTGTAGAAGCACG GTGATTGTAAAACAGTAATTATAATAATAGCCAGCGTTTCTTCATTATCATGTTACATAATATAATGTTG ATTCATGTTGATTATGTACATGACATGAAATGTACATAATTATGTCTAGTGTTTAGCAATTTCCTGACAA AATAGTGCCTTGACTTGTGGCCGATCTGTTACGTAGCTTATGTTCCGTATTGACTTGTTTACGGTAGATG ACTATGACCGTACTATACTTGTTTTATTCTTGATATGTCGATATTATGTGAATACTCGTTTAAAAAACAT CATAATTTACTTCTTTCATGAGAAAGAAAACAATAAAAAATAAAAAATCAAATTAAATAAAAAA
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Automatically set to False for sequences longer than 4500 bytes
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BLAST time is limited to 30 seconds